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相关概念视频

Gravitation01:16

Gravitation

In the years before Newton, a general belief prevailed that different laws governed objects in the sky than objects on Earth. When Kepler wrote down the three laws of planetary motion, explaining in detail the geometrical properties of the planetary orbits around the Sun, there was no immediate idea to discern their connection with more fundamental laws. It was Isaac Newton who, in 1665–66, figured out the connection between planetary motion, the motion of the moon around the Earth, and the...
Tidal Forces01:06

Tidal Forces

The origin of Earth's ocean tides has been a subject of continuous investigation for over 2000 years. However, the work of Newton is considered to be the beginning of the proper understanding of the phenomenon. Ocean tides are the result of gravitational tidal forces. These same tidal forces are present in any astronomical body; they are responsible for the internal heat that creates the volcanic activity on Io, one of Jupiter's moons, and the breakup of stars that get too close to black holes.
Simple Harmonic Motion and Uniform Circular Motion01:42

Simple Harmonic Motion and Uniform Circular Motion

While simple harmonic motion and uniform circular motion may be two separate concepts, they correlate and interlink with each other. Simple harmonic motion is an oscillatory motion in a system where the net force can be described by Hooke's law, while uniform circular motion is the motion of an object in a circular path at constant speed.
There is an easy way to produce simple harmonic motion by using uniform circular motion. For instance, consider a ball attached to a uniformly rotating...
Measuring Acceleration Due to Gravity01:12

Measuring Acceleration Due to Gravity

Consider a coffee mug hanging on a hook in a pantry. If the mug gets knocked, it oscillates back and forth like a pendulum until the oscillations die out.
A simple pendulum can be described as a point mass and a string. Meanwhile, a physical pendulum is any object whose oscillations are similar to a simple pendulum, but cannot be modeled as a point mass on a string because its mass is distributed over a larger area. The behavior of a physical pendulum can be modeled using the principles of...
Acceleration due to Gravity on Other Planets01:24

Acceleration due to Gravity on Other Planets

The gravitational acceleration of an object near the Earth's surface is called the acceleration due to gravity. It can be measured by conducting simple experiments on Earth. However, such an experiment is impossible to conduct on the surface of other planets.
Astronomical observations are thus used to measure the acceleration due to gravity on other planets. This can be determined by observing the effect of a planet's gravity on objects close to it. The crucial factor that helps in this...
Variation in Acceleration due to Gravity near the Earth's Surface01:20

Variation in Acceleration due to Gravity near the Earth's Surface

An object's apparent weight is its weight measured by a spring balance at its location. It is different from its true weight, the force with which the Earth pulls it, because of the Earth's rotation. Mathematically, an object's apparent weight equals its true weight minus the centripetal force that keeps it in a circular motion along with the Earth's surface every 24 hours.
The difference between the true and apparent weights is proportional to the square of the Earth's angular speed. Since the...

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相关实验视频

Updated: Jul 12, 2026

Simulating Imaging of Large Scale Radio Arrays on the Lunar Surface
06:14

Simulating Imaging of Large Scale Radio Arrays on the Lunar Surface

Published on: July 30, 2020

月球的潮加速度是通过激光测量范围来确定的.

O Calame, J D Mulholland

    Science (New York, N.Y.)
    |March 3, 1978
    PubMed
    概括

    科学家分析了1969年至1976年的月球激光测距数据,以测量月球的世俗加速. 这项研究确定了每世纪平方的加速为-24.6弧秒,与潮摩擦效应一致.

    科学领域:

    • * 天文学和天体物理学
    • *地质物理学和地测学
    • * 天体机械学

    背景情况:

    • *月球的轨道运动受到地球的潮摩擦的影响,导致世俗加速.
    • *以前的研究已经估计了这种加速,但精确的测量对于理解地球-月球系统动态至关重要.

    研究的目的:

    • * 用月球激光测距数据确定月球平均经度中的异常世俗加速.
    • * 评估潮摩擦对这种加速的贡献.
    • * 探索分离潮效应与引力常数变化的可能性.

    主要方法:

    • *对从1969年到1976年进行的月球激光测距 (LLR) 测量的分析.
    • * 应用各种观测模型和数据集来推导加速.
    • * 确定值与原子时间尺度和传统估计值进行比较.

    主要成果:

    • * 确定的世俗加速度为-24.6 ± 1.6 弧秒/世纪平方.
    • *该值与既定常规值以及其他方法最近的发现非常一致.
    • * 试图确定月球平均距离变化率的尝试由于观测时间不足,没有取得显著的结果.

    结论:

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    Measuring and Mapping Patterns of Soil Erosion and Deposition Related to Soil Carbonate Concentrations Under Agricultural Management
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    Measuring and Mapping Patterns of Soil Erosion and Deposition Related to Soil Carbonate Concentrations Under Agricultural Management

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    08:54

    Measurements of Waves in a Wind-wave Tank Under Steady and Time-varying Wind Forcing

    Published on: February 13, 2018

    • *这项研究证实了月球异常的世俗加速,主要归因于潮摩擦.
    • *LLR数据提供了一种可靠的方法来改进月球轨道参数的估计.
    • * 需要更长的观测基线来研究像引力常数这样的基本常数的潜在变化.